Experimental: Fix all signed/unsigned warnings

This commit is contained in:
Alex Hultman
2020-11-30 23:00:36 +01:00
parent 2530872a1b
commit ad0a961430
15 changed files with 58 additions and 54 deletions
+3 -3
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@@ -117,9 +117,9 @@ public:
struct WebSocketBehavior { struct WebSocketBehavior {
CompressOptions compression = DISABLED; CompressOptions compression = DISABLED;
int maxPayloadLength = 16 * 1024; unsigned int maxPayloadLength = 16 * 1024;
int idleTimeout = 120; unsigned int idleTimeout = 120;
int maxBackpressure = 1 * 1024 * 1024; unsigned int maxBackpressure = 1 * 1024 * 1024;
fu2::unique_function<void(HttpResponse<SSL> *, HttpRequest *, struct us_socket_context_t *)> upgrade = nullptr; fu2::unique_function<void(HttpResponse<SSL> *, HttpRequest *, struct us_socket_context_t *)> upgrade = nullptr;
fu2::unique_function<void(uWS::WebSocket<SSL, true> *)> open = nullptr; fu2::unique_function<void(uWS::WebSocket<SSL, true> *)> open = nullptr;
fu2::unique_function<void(uWS::WebSocket<SSL, true> *, std::string_view, uWS::OpCode)> message = nullptr; fu2::unique_function<void(uWS::WebSocket<SSL, true> *, std::string_view, uWS::OpCode)> message = nullptr;
+17 -13
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@@ -20,6 +20,10 @@
/* This class implements async socket memory management strategies */ /* This class implements async socket memory management strategies */
/* NOTE: Many unsigned/signed conversion warnings could be solved by moving from int length
* to unsigned length for everything to/from uSockets - this would however remove the opportunity
* to signal error with -1 (which is how the entire UNIX syscalling is built). */
#include "LoopData.h" #include "LoopData.h"
#include "AsyncSocketData.h" #include "AsyncSocketData.h"
@@ -87,7 +91,7 @@ protected:
LoopData *loopData = getLoopData(); LoopData *loopData = getLoopData();
if (loopData->corkedSocket == this && loopData->corkOffset + size < LoopData::CORK_BUFFER_SIZE) { if (loopData->corkedSocket == this && loopData->corkOffset + size < LoopData::CORK_BUFFER_SIZE) {
char *sendBuffer = loopData->corkBuffer + loopData->corkOffset; char *sendBuffer = loopData->corkBuffer + loopData->corkOffset;
loopData->corkOffset += (int) size; loopData->corkOffset += (unsigned int) size;
return {sendBuffer, false}; return {sendBuffer, false};
} else { } else {
/* Slow path for now, we want to always be corked if possible */ /* Slow path for now, we want to always be corked if possible */
@@ -127,7 +131,7 @@ protected:
static thread_local char buf[16]; static thread_local char buf[16];
int ipLength = 16; int ipLength = 16;
us_socket_remote_address(SSL, (us_socket_t *) this, buf, &ipLength); us_socket_remote_address(SSL, (us_socket_t *) this, buf, &ipLength);
return std::string_view(buf, ipLength); return std::string_view(buf, (unsigned int) ipLength);
} }
/* Returns the text representation of IP */ /* Returns the text representation of IP */
@@ -156,14 +160,14 @@ protected:
if ((unsigned int) written < asyncSocketData->buffer.length()) { if ((unsigned int) written < asyncSocketData->buffer.length()) {
/* Update buffering (todo: we can do better here if we keep track of what happens to this guy later on) */ /* Update buffering (todo: we can do better here if we keep track of what happens to this guy later on) */
asyncSocketData->buffer = asyncSocketData->buffer.substr(written); asyncSocketData->buffer = asyncSocketData->buffer.substr((size_t) written);
if (optionally) { if (optionally) {
/* Thankfully we can exit early here */ /* Thankfully we can exit early here */
return {0, true}; return {0, true};
} else { } else {
/* This path is horrible and points towards erroneous usage */ /* This path is horrible and points towards erroneous usage */
asyncSocketData->buffer.append(src, length); asyncSocketData->buffer.append(src, (unsigned int) length);
return {length, true}; return {length, true};
} }
@@ -176,21 +180,21 @@ protected:
if (length) { if (length) {
if (loopData->corkedSocket == this) { if (loopData->corkedSocket == this) {
/* We are corked */ /* We are corked */
if (LoopData::CORK_BUFFER_SIZE - loopData->corkOffset >= length) { if (LoopData::CORK_BUFFER_SIZE - loopData->corkOffset >= (unsigned int) length) {
/* If the entire chunk fits in cork buffer */ /* If the entire chunk fits in cork buffer */
memcpy(loopData->corkBuffer + loopData->corkOffset, src, length); memcpy(loopData->corkBuffer + loopData->corkOffset, src, (unsigned int) length);
loopData->corkOffset += length; loopData->corkOffset += (unsigned int) length;
/* Fall through to default return */ /* Fall through to default return */
} else { } else {
/* Strategy differences between SSL and non-SSL regarding syscall minimizing */ /* Strategy differences between SSL and non-SSL regarding syscall minimizing */
if constexpr (SSL) { if constexpr (SSL) {
/* Cork up as much as we can */ /* Cork up as much as we can */
int stripped = LoopData::CORK_BUFFER_SIZE - loopData->corkOffset; unsigned int stripped = LoopData::CORK_BUFFER_SIZE - loopData->corkOffset;
memcpy(loopData->corkBuffer + loopData->corkOffset, src, stripped); memcpy(loopData->corkBuffer + loopData->corkOffset, src, stripped);
loopData->corkOffset = LoopData::CORK_BUFFER_SIZE; loopData->corkOffset = LoopData::CORK_BUFFER_SIZE;
auto [written, failed] = uncork(src + stripped, length - stripped, optionally); auto [written, failed] = uncork(src + stripped, length - (int) stripped, optionally);
return {written + stripped, failed}; return {written + (int) stripped, failed};
} }
/* For non-SSL we take the penalty of two syscalls */ /* For non-SSL we take the penalty of two syscalls */
@@ -210,11 +214,11 @@ protected:
/* Fall back to worst possible case (should be very rare for HTTP) */ /* Fall back to worst possible case (should be very rare for HTTP) */
/* At least we can reserve room for next chunk if we know it up front */ /* At least we can reserve room for next chunk if we know it up front */
if (nextLength) { if (nextLength) {
asyncSocketData->buffer.reserve(asyncSocketData->buffer.length() + length - written + nextLength); asyncSocketData->buffer.reserve(asyncSocketData->buffer.length() + (size_t) (length - written + nextLength));
} }
/* Buffer this chunk */ /* Buffer this chunk */
asyncSocketData->buffer.append(src + written, length - written); asyncSocketData->buffer.append(src + written, (size_t) (length - written));
/* Return the failure */ /* Return the failure */
return {length, true}; return {length, true};
@@ -237,7 +241,7 @@ protected:
if (loopData->corkOffset) { if (loopData->corkOffset) {
/* Corked data is already accounted for via its write call */ /* Corked data is already accounted for via its write call */
auto [written, failed] = write(loopData->corkBuffer, loopData->corkOffset, false, length); auto [written, failed] = write(loopData->corkBuffer, (int) loopData->corkOffset, false, length);
loopData->corkOffset = 0; loopData->corkOffset = 0;
if (failed) { if (failed) {
+1 -1
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@@ -133,7 +133,7 @@ private:
#endif #endif
/* The return value is entirely up to us to interpret. The HttpParser only care for whether the returned value is DIFFERENT or not from passed user */ /* The return value is entirely up to us to interpret. The HttpParser only care for whether the returned value is DIFFERENT or not from passed user */
void *returnedSocket = httpResponseData->consumePostPadded(data, length, s, proxyParser, [httpContextData](void *s, uWS::HttpRequest *httpRequest) -> void * { void *returnedSocket = httpResponseData->consumePostPadded(data, (unsigned int) length, s, proxyParser, [httpContextData](void *s, uWS::HttpRequest *httpRequest) -> void * {
/* For every request we reset the timeout and hang until user makes action */ /* For every request we reset the timeout and hang until user makes action */
/* Warning: if we are in shutdown state, resetting the timer is a security issue! */ /* Warning: if we are in shutdown state, resetting the timer is a security issue! */
us_socket_timeout(SSL, (us_socket_t *) s, 0); us_socket_timeout(SSL, (us_socket_t *) s, 0);
+19 -19
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@@ -45,7 +45,7 @@ private:
struct Header { struct Header {
std::string_view key, value; std::string_view key, value;
} headers[MAX_HEADERS]; } headers[MAX_HEADERS];
int querySeparator; unsigned int querySeparator;
bool didYield; bool didYield;
BloomFilter bf; BloomFilter bf;
std::pair<int, std::string_view *> currentParameters; std::pair<int, std::string_view *> currentParameters;
@@ -111,7 +111,7 @@ public:
/* Returns the raw querystring as a whole, still encoded */ /* Returns the raw querystring as a whole, still encoded */
std::string_view getQuery() { std::string_view getQuery() {
if (querySeparator < (int) headers->value.length()) { if (querySeparator < headers->value.length()) {
/* Strip the initial ? */ /* Strip the initial ? */
return std::string_view(headers->value.data() + querySeparator + 1, headers->value.length() - querySeparator - 1); return std::string_view(headers->value.data() + querySeparator + 1, headers->value.length() - querySeparator - 1);
} else { } else {
@@ -151,8 +151,8 @@ private:
static unsigned int toUnsignedInteger(std::string_view str) { static unsigned int toUnsignedInteger(std::string_view str) {
unsigned int unsignedIntegerValue = 0; unsigned int unsignedIntegerValue = 0;
for (unsigned char c : str) { for (char c : str) {
unsignedIntegerValue = unsignedIntegerValue * 10 + (c - '0'); unsignedIntegerValue = unsignedIntegerValue * 10 + ((unsigned char) c - '0');
} }
return unsignedIntegerValue; return unsignedIntegerValue;
} }
@@ -173,7 +173,7 @@ private:
headers->key = std::string_view(preliminaryKey, (size_t) (postPaddedBuffer - preliminaryKey)); headers->key = std::string_view(preliminaryKey, (size_t) (postPaddedBuffer - preliminaryKey));
for (postPaddedBuffer++; (*postPaddedBuffer == ':' || *postPaddedBuffer < 33) && *postPaddedBuffer != '\r'; postPaddedBuffer++); for (postPaddedBuffer++; (*postPaddedBuffer == ':' || *postPaddedBuffer < 33) && *postPaddedBuffer != '\r'; postPaddedBuffer++);
preliminaryValue = postPaddedBuffer; preliminaryValue = postPaddedBuffer;
postPaddedBuffer = (char *) memchr(postPaddedBuffer, '\r', end - postPaddedBuffer); postPaddedBuffer = (char *) memchr(postPaddedBuffer, '\r', (size_t) (end - postPaddedBuffer));
if (postPaddedBuffer && postPaddedBuffer[1] == '\n') { if (postPaddedBuffer && postPaddedBuffer[1] == '\n') {
headers->value = std::string_view(preliminaryValue, (size_t) (postPaddedBuffer - preliminaryValue)); headers->value = std::string_view(preliminaryValue, (size_t) (postPaddedBuffer - preliminaryValue));
postPaddedBuffer += 2; postPaddedBuffer += 2;
@@ -188,17 +188,17 @@ private:
// the only caller of getHeaders // the only caller of getHeaders
template <int CONSUME_MINIMALLY> template <int CONSUME_MINIMALLY>
std::pair<int, void *> fenceAndConsumePostPadded(char *data, int length, void *user, void *reserved, HttpRequest *req, fu2::unique_function<void *(void *, HttpRequest *)> &requestHandler, fu2::unique_function<void *(void *, std::string_view, bool)> &dataHandler) { std::pair<int, void *> fenceAndConsumePostPadded(char *data, unsigned int length, void *user, void *reserved, HttpRequest *req, fu2::unique_function<void *(void *, HttpRequest *)> &requestHandler, fu2::unique_function<void *(void *, std::string_view, bool)> &dataHandler) {
/* How much data we CONSUMED (to throw away) */ /* How much data we CONSUMED (to throw away) */
int consumedTotal = 0; unsigned int consumedTotal = 0;
#ifdef UWS_WITH_PROXY #ifdef UWS_WITH_PROXY
/* ProxyParser is passed as reserved parameter */ /* ProxyParser is passed as reserved parameter */
ProxyParser *pp = (ProxyParser *) reserved; ProxyParser *pp = (ProxyParser *) reserved;
/* Parse PROXY protocol */ /* Parse PROXY protocol */
auto [done, offset] = pp->parse({data, (unsigned int) length}); auto [done, offset] = pp->parse({data, /*(unsigned int)*/ length});
if (!done) { if (!done) {
return {0, user}; return {0, user};
} else { } else {
@@ -212,13 +212,13 @@ private:
/* Fence one byte past end of our buffer (buffer has post padded margins) */ /* Fence one byte past end of our buffer (buffer has post padded margins) */
data[length] = '\r'; data[length] = '\r';
for (int consumed; length && (consumed = getHeaders(data, data + length, req->headers, &req->bf)); ) { for (unsigned int consumed; length && (consumed = getHeaders(data, data + length, req->headers, &req->bf)); ) {
data += consumed; data += consumed;
length -= consumed; length -= consumed;
consumedTotal += consumed; consumedTotal += consumed;
/* Strip away tail of first "header value" aka URL */ /* Strip away tail of first "header value" aka URL */
req->headers->value = std::string_view(req->headers->value.data(), std::max<int>(0, (int) req->headers->value.length() - 9)); req->headers->value = std::string_view(req->headers->value.data(), std::max<size_t>(0, req->headers->value.length() - 9));
/* Add all headers to bloom filter */ /* Add all headers to bloom filter */
req->bf.reset(); req->bf.reset();
@@ -228,7 +228,7 @@ private:
/* Parse query */ /* Parse query */
const char *querySeparatorPtr = (const char *) memchr(req->headers->value.data(), '?', req->headers->value.length()); const char *querySeparatorPtr = (const char *) memchr(req->headers->value.data(), '?', req->headers->value.length());
req->querySeparator = (int) ((querySeparatorPtr ? querySeparatorPtr : req->headers->value.data() + req->headers->value.length()) - req->headers->value.data()); req->querySeparator = (unsigned int) ((querySeparatorPtr ? querySeparatorPtr : req->headers->value.data() + req->headers->value.length()) - req->headers->value.data());
/* If returned socket is not what we put in we need /* If returned socket is not what we put in we need
* to break here as we either have upgraded to * to break here as we either have upgraded to
@@ -267,7 +267,7 @@ private:
} }
public: public:
void *consumePostPadded(char *data, int length, void *user, void *reserved, fu2::unique_function<void *(void *, HttpRequest *)> &&requestHandler, fu2::unique_function<void *(void *, std::string_view, bool)> &&dataHandler, fu2::unique_function<void *(void *)> &&errorHandler) { void *consumePostPadded(char *data, unsigned int length, void *user, void *reserved, fu2::unique_function<void *(void *, HttpRequest *)> &&requestHandler, fu2::unique_function<void *(void *, std::string_view, bool)> &&dataHandler, fu2::unique_function<void *(void *)> &&errorHandler) {
/* This resets BloomFilter by construction, but later we also reset it again. /* This resets BloomFilter by construction, but later we also reset it again.
* Optimize this to skip resetting twice (req could be made global) */ * Optimize this to skip resetting twice (req could be made global) */
@@ -277,7 +277,7 @@ public:
// this is exactly the same as below! // this is exactly the same as below!
// todo: refactor this // todo: refactor this
if (remainingStreamingBytes >= (unsigned int) length) { if (remainingStreamingBytes >= length) {
void *returnedUser = dataHandler(user, std::string_view(data, length), remainingStreamingBytes == (unsigned int) length); void *returnedUser = dataHandler(user, std::string_view(data, length), remainingStreamingBytes == (unsigned int) length);
remainingStreamingBytes -= length; remainingStreamingBytes -= length;
return returnedUser; return returnedUser;
@@ -297,14 +297,14 @@ public:
} else if (fallback.length()) { } else if (fallback.length()) {
int had = (int) fallback.length(); int had = (int) fallback.length();
int maxCopyDistance = (int) std::min(MAX_FALLBACK_SIZE - fallback.length(), (size_t) length); size_t maxCopyDistance = std::min(MAX_FALLBACK_SIZE - fallback.length(), (size_t) length);
/* We don't want fallback to be short string optimized, since we want to move it */ /* We don't want fallback to be short string optimized, since we want to move it */
fallback.reserve(fallback.length() + maxCopyDistance + std::max<int>(MINIMUM_HTTP_POST_PADDING, sizeof(std::string))); fallback.reserve(fallback.length() + maxCopyDistance + std::max<int>(MINIMUM_HTTP_POST_PADDING, sizeof(std::string)));
fallback.append(data, maxCopyDistance); fallback.append(data, maxCopyDistance);
// break here on break // break here on break
std::pair<int, void *> consumed = fenceAndConsumePostPadded<true>(fallback.data(), (int) fallback.length(), user, reserved, &req, requestHandler, dataHandler); std::pair<int, void *> consumed = fenceAndConsumePostPadded<true>(fallback.data(), (unsigned int) fallback.length(), user, reserved, &req, requestHandler, dataHandler);
if (consumed.second != user) { if (consumed.second != user) {
return consumed.second; return consumed.second;
} }
@@ -313,8 +313,8 @@ public:
fallback.clear(); fallback.clear();
data += consumed.first - had; data += (unsigned int) (consumed.first - had);
length -= consumed.first - had; length -= (unsigned int) (consumed.first - had);
if (remainingStreamingBytes) { if (remainingStreamingBytes) {
// this is exactly the same as above! // this is exactly the same as above!
@@ -351,8 +351,8 @@ public:
return consumed.second; return consumed.second;
} }
data += consumed.first; data += (unsigned int) consumed.first;
length -= consumed.first; length -= (unsigned int) consumed.first;
if (length) { if (length) {
if ((unsigned int) length < MAX_FALLBACK_SIZE) { if ((unsigned int) length < MAX_FALLBACK_SIZE) {
+2 -2
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@@ -155,7 +155,7 @@ private:
/* uSockets only deals with int sizes, so pass chunks of max signed int size */ /* uSockets only deals with int sizes, so pass chunks of max signed int size */
auto writtenFailed = Super::write(data.data() + written, (int) std::min<size_t>(data.length() - written, INT_MAX), optional); auto writtenFailed = Super::write(data.data() + written, (int) std::min<size_t>(data.length() - written, INT_MAX), optional);
written += writtenFailed.first; written += (size_t) writtenFailed.first;
failed = writtenFailed.second; failed = writtenFailed.second;
} }
@@ -221,7 +221,7 @@ public:
if (webSocketContextData->compression != DISABLED) { if (webSocketContextData->compression != DISABLED) {
if (secWebSocketExtensions.length()) { if (secWebSocketExtensions.length()) {
/* We never support client context takeover (the client cannot compress with a sliding window). */ /* We never support client context takeover (the client cannot compress with a sliding window). */
int wantedOptions = PERMESSAGE_DEFLATE | CLIENT_NO_CONTEXT_TAKEOVER; unsigned int wantedOptions = PERMESSAGE_DEFLATE | CLIENT_NO_CONTEXT_TAKEOVER;
/* Shared compressor is the default */ /* Shared compressor is the default */
if (webSocketContextData->compression == SHARED_COMPRESSOR) { if (webSocketContextData->compression == SHARED_COMPRESSOR) {
+2 -2
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@@ -158,7 +158,7 @@ private:
/* If we are on STOP, return where we may stand */ /* If we are on STOP, return where we may stand */
if (isStop) { if (isStop) {
/* We have reached accross the entire URL with no stoppage, execute */ /* We have reached accross the entire URL with no stoppage, execute */
for (int handler : parent->handlers) { for (uint32_t handler : parent->handlers) {
if (handlers[handler & HANDLER_MASK](this)) { if (handlers[handler & HANDLER_MASK](this)) {
return true; return true;
} }
@@ -170,7 +170,7 @@ private:
for (auto &p : parent->children) { for (auto &p : parent->children) {
if (p->name.length() && p->name[0] == '*') { if (p->name.length() && p->name[0] == '*') {
/* Wildcard match (can be seen as a shortcut) */ /* Wildcard match (can be seen as a shortcut) */
for (int handler : p->handlers) { for (uint32_t handler : p->handlers) {
if (handlers[handler & HANDLER_MASK](this)) { if (handlers[handler & HANDLER_MASK](this)) {
return true; return true;
} }
+2 -2
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@@ -57,11 +57,11 @@ public:
bool noMark = false; bool noMark = false;
/* Good 16k for SSL perf. */ /* Good 16k for SSL perf. */
static const int CORK_BUFFER_SIZE = 16 * 1024; static const unsigned int CORK_BUFFER_SIZE = 16 * 1024;
/* Cork data */ /* Cork data */
char *corkBuffer = new char[CORK_BUFFER_SIZE]; char *corkBuffer = new char[CORK_BUFFER_SIZE];
int corkOffset = 0; unsigned int corkOffset = 0;
void *corkedSocket = nullptr; void *corkedSocket = nullptr;
/* Per message deflate data */ /* Per message deflate data */
+1 -1
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@@ -56,7 +56,7 @@ namespace uWS {
char *in = (char *) statementValue.data(); char *in = (char *) statementValue.data();
/* Write offset */ /* Write offset */
int out = 0; unsigned int out = 0;
/* Walk over all chars until end or null char, decoding in place */ /* Walk over all chars until end or null char, decoding in place */
for (int i = 0; i < statementValue.length() && in[i]; i++) { for (int i = 0; i < statementValue.length() && in[i]; i++) {
+2 -2
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@@ -138,9 +138,9 @@ public:
/* Format and send the close frame */ /* Format and send the close frame */
static const int MAX_CLOSE_PAYLOAD = 123; static const int MAX_CLOSE_PAYLOAD = 123;
int length = (int) std::min<size_t>(MAX_CLOSE_PAYLOAD, message.length()); size_t length = std::min<size_t>(MAX_CLOSE_PAYLOAD, message.length());
char closePayload[MAX_CLOSE_PAYLOAD + 2]; char closePayload[MAX_CLOSE_PAYLOAD + 2];
int closePayloadLength = (int) protocol::formatClosePayload(closePayload, (uint16_t) code, message.data(), length); size_t closePayloadLength = protocol::formatClosePayload(closePayload, (uint16_t) code, message.data(), length);
bool ok = send(std::string_view(closePayload, closePayloadLength), OpCode::CLOSE); bool ok = send(std::string_view(closePayload, closePayloadLength), OpCode::CLOSE);
/* FIN if we are ok and not corked */ /* FIN if we are ok and not corked */
+2 -2
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@@ -188,7 +188,7 @@ private:
} else { } else {
/* Here we never mind any size optimizations as we are in the worst possible path */ /* Here we never mind any size optimizations as we are in the worst possible path */
webSocketData->fragmentBuffer.append(data, length); webSocketData->fragmentBuffer.append(data, length);
webSocketData->controlTipLength += (int) length; webSocketData->controlTipLength += (unsigned int) length;
if (!remainingBytes && fin) { if (!remainingBytes && fin) {
char *controlBuffer = (char *) webSocketData->fragmentBuffer.data() + webSocketData->fragmentBuffer.length() - webSocketData->controlTipLength; char *controlBuffer = (char *) webSocketData->fragmentBuffer.data() + webSocketData->fragmentBuffer.length() - webSocketData->controlTipLength;
@@ -282,7 +282,7 @@ private:
asyncSocket->cork(); asyncSocket->cork();
/* This parser has virtually no overhead */ /* This parser has virtually no overhead */
uWS::WebSocketProtocol<isServer, WebSocketContext<SSL, isServer>>::consume(data, length, (WebSocketState<isServer> *) webSocketData, s); uWS::WebSocketProtocol<isServer, WebSocketContext<SSL, isServer>>::consume(data, (unsigned int) length, (WebSocketState<isServer> *) webSocketData, s);
/* Uncorking a closed socekt is fine, in fact it is needed */ /* Uncorking a closed socekt is fine, in fact it is needed */
asyncSocket->uncork(); asyncSocket->uncork();
+1 -1
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@@ -53,7 +53,7 @@ public:
/* Settings for this context */ /* Settings for this context */
size_t maxPayloadLength = 0; size_t maxPayloadLength = 0;
int idleTimeout = 0; unsigned int idleTimeout = 0;
/* We do need these for async upgrade */ /* We do need these for async upgrade */
int compression; int compression;
+1 -1
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@@ -35,7 +35,7 @@ struct WebSocketData : AsyncSocketData<false>, WebSocketState<true> {
template <bool> friend struct HttpContext; template <bool> friend struct HttpContext;
private: private:
std::string fragmentBuffer; std::string fragmentBuffer;
int controlTipLength = 0; unsigned int controlTipLength = 0;
bool isShuttingDown = 0; bool isShuttingDown = 0;
enum CompressionStatus : char { enum CompressionStatus : char {
DISABLED, DISABLED,
+3 -3
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@@ -112,10 +112,10 @@ public:
template <bool isServer> template <bool isServer>
struct ExtensionsNegotiator { struct ExtensionsNegotiator {
protected: protected:
int options; unsigned int options;
public: public:
ExtensionsNegotiator(int wantedOptions) { ExtensionsNegotiator(unsigned int wantedOptions) {
options = wantedOptions; options = wantedOptions;
} }
@@ -159,7 +159,7 @@ public:
} }
} }
int getNegotiatedOptions() { unsigned int getNegotiatedOptions() {
return options; return options;
} }
}; };
+1 -1
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@@ -123,7 +123,7 @@ public:
}; };
for (int i = 0; i < 6; i++) { for (int i = 0; i < 6; i++) {
b_input[i] = (input[4 * i + 3] & 0xff) | (input[4 * i + 2] & 0xff) << 8 | (input[4 * i + 1] & 0xff) << 16 | (input[4 * i + 0] & 0xff) << 24; b_input[i] = (uint32_t) ((input[4 * i + 3] & 0xff) | (input[4 * i + 2] & 0xff) << 8 | (input[4 * i + 1] & 0xff) << 16 | (input[4 * i + 0] & 0xff) << 24);
} }
sha1(b_output, b_input); sha1(b_output, b_input);
uint32_t last_b[16] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 480}; uint32_t last_b[16] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 480};
+1 -1
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@@ -230,7 +230,7 @@ static inline size_t formatMessage(char *dst, const char *src, size_t length, Op
char mask[4]; char mask[4];
if (!isServer) { if (!isServer) {
dst[1] |= 0x80; dst[1] |= 0x80;
uint32_t random = rand(); uint32_t random = (uint32_t) rand();
memcpy(mask, &random, 4); memcpy(mask, &random, 4);
memcpy(dst + headerLength, &random, 4); memcpy(dst + headerLength, &random, 4);
headerLength += 4; headerLength += 4;